Ammonia/Methane combustion: Stability and NOx emissions

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Ariemma, Giovanni Battista, et al. “Ammonia/Methane/Combustion:/Stability/and/NOx/Emissions”. Combustion and Flame, vol. 241, 2022, p. 112071, https://doi.org/10.1016/j.combustflame.2022.112071.
Ariemma, G. B., Sorrentino, G., Ragucci, R., de Joannon, M., & Sabia, P. (2022). Ammonia/Methane combustion: Stability and NOx emissions. Combustion and Flame, 241, 112071. https://doi.org/10.1016/j.combustflame.2022.112071
Ariemma, Giovanni Battista, Giancarlo Sorrentino, Raffaele Ragucci, Mara de Joannon, and Pino Sabia. “Ammonia/Methane/Combustion:/Stability/and/NOx/Emissions”. Combustion and Flame 241 (2022): 112071. https://doi.org/10.1016/j.combustflame.2022.112071.
Ariemma GB, Sorrentino G, Ragucci R, de Joannon M, Sabia P. Ammonia/Methane combustion: Stability and NOx emissions. Combustion and Flame. 2022;241:112071.
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Refrences
Title Journal Journal Categories Citations Publication Date
Effects of OH concentration and temperature on NO emission characteristics of turbulent non-premixed CH4/NH3/air flames in a two-stage gas turbine like combustor at high pressure Proceedings of the Combustion Institute
  • Science: Physics: Heat: Thermodynamics
  • Social Sciences: Industries. Land use. Labor: Special industries and trades: Energy industries. Energy policy. Fuel trade
  • Technology: Chemical technology: Chemical engineering
  • Technology: Mechanical engineering and machinery
  • Technology: Engineering (General). Civil engineering (General)
51 2021
Experimental and modeling study on the auto-ignition properties of ammonia/methane mixtures at elevated pressures Proceedings of the Combustion Institute
  • Science: Physics: Heat: Thermodynamics
  • Social Sciences: Industries. Land use. Labor: Special industries and trades: Energy industries. Energy policy. Fuel trade
  • Technology: Chemical technology: Chemical engineering
  • Technology: Mechanical engineering and machinery
  • Technology: Engineering (General). Civil engineering (General)
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NO and OH* emission characteristics of very-lean to stoichiometric ammonia–hydrogen–air swirl flames Proceedings of the Combustion Institute
  • Science: Physics: Heat: Thermodynamics
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  • Technology: Chemical technology: Chemical engineering
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  • Technology: Engineering (General). Civil engineering (General)
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  • Technology: Chemical technology: Chemical engineering
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  • Technology: Engineering (General). Civil engineering (General)
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An experimental and modeling study of ammonia with enriched oxygen content and ammonia/hydrogen laminar flame speed at elevated pressure and temperature Proceedings of the Combustion Institute
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  • Social Sciences: Industries. Land use. Labor: Special industries and trades: Energy industries. Energy policy. Fuel trade
  • Technology: Chemical technology: Chemical engineering
  • Technology: Mechanical engineering and machinery
  • Technology: Engineering (General). Civil engineering (General)
208 2021
Citations
Title Journal Journal Categories Citations Publication Date
Developing a versatile detail mechanism for NH3 combustion Journal of Mechanical Science and Technology
  • Technology: Mechanical engineering and machinery
  • Technology: Mechanical engineering and machinery
  • Technology: Engineering (General). Civil engineering (General)
2024
Study on effects of ethylene or acetylene addition on the stability of ammonia laminar diffusion flame by optical diagnostics and chemical kinetics Applied Energy
  • Social Sciences: Industries. Land use. Labor: Special industries and trades: Energy industries. Energy policy. Fuel trade
  • Technology: Chemical technology: Chemical engineering
  • Technology: Environmental technology. Sanitary engineering
  • Technology: Engineering (General). Civil engineering (General)
2024
Combustion stage configurations for intercooled regenerative reheat gas turbine systems Applied Thermal Engineering
  • Science: Physics: Heat: Thermodynamics
  • Social Sciences: Industries. Land use. Labor: Special industries and trades: Energy industries. Energy policy. Fuel trade
  • Technology: Mechanical engineering and machinery
  • Technology: Engineering (General). Civil engineering (General): Mechanics of engineering. Applied mechanics
  • Technology: Mechanical engineering and machinery
  • Technology: Engineering (General). Civil engineering (General)
2024
Stable lean co-combustion of ammonia/methane with air in a porous burner Applied Thermal Engineering
  • Science: Physics: Heat: Thermodynamics
  • Social Sciences: Industries. Land use. Labor: Special industries and trades: Energy industries. Energy policy. Fuel trade
  • Technology: Mechanical engineering and machinery
  • Technology: Engineering (General). Civil engineering (General): Mechanics of engineering. Applied mechanics
  • Technology: Mechanical engineering and machinery
  • Technology: Engineering (General). Civil engineering (General)
2024
Comparative analysis of fluorescence removal approaches for instantaneous Raman/Rayleigh measurements in NH3/H2-air, CH4-air, and NH3/CH4-air flames Combustion and Flame
  • Science: Physics: Heat: Thermodynamics
  • Social Sciences: Industries. Land use. Labor: Special industries and trades: Energy industries. Energy policy. Fuel trade
  • Technology: Engineering (General). Civil engineering (General)
  • Technology: Chemical technology: Chemical engineering
  • Technology: Mechanical engineering and machinery
  • Technology: Mechanical engineering and machinery
  • Technology: Engineering (General). Civil engineering (General)
2024
Citations Analysis
The category Social Sciences: Industries. Land use. Labor: Special industries and trades: Energy industries. Energy policy. Fuel trade 70 is the most commonly referenced area in studies that cite this article. The first research to cite this article was titled Computational Study on Cocombustion Characteristics of Pulverized Coal Blending with NH3 under Moderate or Intense Low-Oxygen Dilution Combustion Mode and was published in 2022. The most recent citation comes from a 2024 study titled Ammonia fueled engine with diesel pilot ignition: Approach to achieve ultra-high ammonia substitution. This article reached its peak citation in 2023, with 49 citations. It has been cited in 32 different journals, 9% of which are open access. Among related journals, the Fuel cited this research the most, with 21 citations. The chart below illustrates the annual citation trends for this article.
Citations used this article by year